CN109571202B - A polishing equipment for kettle - Google Patents

A polishing equipment for kettle Download PDF

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Publication number
CN109571202B
CN109571202B CN201811637586.7A CN201811637586A CN109571202B CN 109571202 B CN109571202 B CN 109571202B CN 201811637586 A CN201811637586 A CN 201811637586A CN 109571202 B CN109571202 B CN 109571202B
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China
Prior art keywords
plate
block
sliding
hole
supporting
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CN201811637586.7A
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Chinese (zh)
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CN109571202A (en
Inventor
仇多宁
潘中平
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Anhui Huining International Trade Co ltd
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Anhui Huining International Trade Co ltd
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Priority to CN201811637586.7A priority Critical patent/CN109571202B/en
Publication of CN109571202A publication Critical patent/CN109571202A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24BMACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
    • B24B21/00Machines or devices using grinding or polishing belts; Accessories therefor
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24BMACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
    • B24B21/00Machines or devices using grinding or polishing belts; Accessories therefor
    • B24B21/18Accessories
    • B24B21/20Accessories for controlling or adjusting the tracking or the tension of the grinding belt
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24BMACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
    • B24B41/00Component parts such as frames, beds, carriages, headstocks
    • B24B41/06Work supports, e.g. adjustable steadies

Abstract

The invention discloses polishing equipment for a kettle, which comprises an equipment base, wherein a third supporting plate is arranged below the equipment base, a first motor is arranged on the third supporting plate, driving rollers distributed in an array manner are arranged on the equipment base, abrasive belts are wrapped on the driving rollers, a tensioning device for adjusting the abrasive belts is arranged on the equipment base, and kettle clamping devices distributed symmetrically are arranged on the equipment base; the tensioning device comprises a driving rod and an adjusting block; the clamping device comprises a second lead screw which is a bidirectional lead screw, a limiting block is arranged on the second lead screw, and a first lead screw main body and a second lead screw main body are respectively arranged at two ends of the limiting block. After the polishing equipment is clamped by the clamping device, the rotating rod is rotated, so that the kettle is rotated to polish the kettle, the production efficiency is improved, the polishing quality is ensured, and the labor intensity of workers is reduced.

Description

A polishing equipment for kettle
Technical Field
The invention relates to a polishing device, in particular to a polishing device for a kettle.
Background
One of the essential daily necessities of the kettle is an electric appliance for converting electric energy into internal energy of water, and the working principle of the electric kettle is that steam generated when water boils deforms a bimetallic strip of a steam temperature sensing element, and the deformation pushes a power switch to cut off the power supply through a lever principle. The power failure is not self-resetting, so the kettle can not be automatically heated after the power failure.
The kettle need polish its outer wall in process of production, and current burnishing machine is more crude, needs the manual work to hand the kettle body, control motor and bistrique and polish, and production efficiency is lower, and polishing quality is difficult to guarantee, and workman's intensity of labour is great moreover, and the human cost is higher, also injures the user easily when the maloperation appears.
Disclosure of Invention
The invention aims to provide polishing equipment for a kettle, wherein the kettle is placed between a first movable supporting block and a second movable supporting block, a second screw rod is driven to rotate by a second motor, so that the kettle is clamped when the first movable supporting block and the second movable supporting block move oppositely, the kettle is loosened when the first movable supporting block and the second movable supporting block move relatively, after the kettle is clamped, a first motor drives an abrasive belt to rotate to push the kettle to be in contact with the abrasive belt for polishing, and the kettle is rotated by rotating a rotating rod to polish the kettle, so that the production efficiency is improved, the polishing quality is ensured, and the labor intensity of workers is reduced; the transmission roller is provided with the tensioning device, so that the phenomenon that the abrasive belt is loosened in the using process can be adjusted, the performance of equipment is improved, and the abrasive belt is convenient to mount and dismount.
The purpose of the invention can be realized by the following technical scheme:
the utility model provides a polishing equipment for kettle, polishing equipment includes the equipment base, and the below of equipment base is equipped with the third backup pad, is equipped with first motor in the third backup pad, is equipped with the driving roller of array distribution on the equipment base, and the parcel has the abrasive band on the driving roller, be equipped with the overspeed device tensioner who is used for adjusting the abrasive band on the equipment base, be equipped with the kettle clamping device of symmetric distribution on the equipment base.
The tensioning device comprises a driving rod and an adjusting block.
The clamping device comprises a second lead screw which is a bidirectional lead screw, a limiting block is arranged on the second lead screw, and a first lead screw main body and a second lead screw main body are respectively arranged at two ends of the limiting block.
The first screw rod main body and the second screw rod main body are respectively and rotatably connected with a first movable supporting block and a second movable supporting block.
The first movable supporting block is provided with a sliding plate in a sliding mode, a sliding piece is movably arranged on the sliding plate, and one end of the sliding piece is fixedly connected with a fixing plate.
Furthermore, the equipment base comprises an equipment platform, and support foot frames distributed in an array manner are arranged below the equipment platform; the equipment platform is provided with symmetrically distributed operating platforms, each operating platform comprises symmetrically distributed first supporting plates, each first supporting plate is provided with a supporting table, and each supporting table is provided with symmetrically distributed first square holes; a first guide shaft is arranged between the first supporting plates, first through holes are formed in the first supporting plates, and a motor supporting table is arranged on one side of any one first supporting plate.
Furthermore, a second supporting plate is arranged on the equipment platform and between the operating platforms, lightening holes are formed in the second supporting plate, three second through holes distributed in an array mode are formed in the second supporting plate, the three second through holes are located at three corners of the second supporting plate respectively, an adjusting support is arranged at the fourth corner of the second supporting plate, a waist-shaped hole is formed in the adjusting support, a second square hole is formed in the adjusting support, the second square hole and the waist-shaped hole are vertically distributed, and second guide shafts distributed symmetrically are arranged in the second square hole; supporting blocks are arranged at two ends of the adjusting support, and third through holes are formed in the supporting blocks; the device platform is provided with a third square hole below the adjusting support, the device platform is provided with support rods distributed in an array manner below the adjusting support, a third support plate is arranged on the support rods, a first motor is arranged on the third support plate, and an output shaft of the first motor is fixedly connected with a first belt pulley.
Further, it is equipped with the driving roller to rotate through the bearing in the second through hole, the driving roller includes the roll body, the roll body includes the fixed axle, the one end and the roll body fastening connection of fixed axle, other end fastening connection has the second belt pulley, the structure of second belt pulley and first belt pulley is the same, it is the final drive roller through bearing pivoted in the second through hole of support below wherein to adjust, the second belt pulley on the final drive roller passes through the belt and is connected with first belt pulley rotation, what remaining two second through hole internal rotations is the secondary drive roller, the secondary drive roller is the same with the final drive roller's structure, it is different in that the one end of the fixed axle on the secondary drive roller does not have the second belt pulley.
Furthermore, the driving rod comprises a first screw rod, the first screw rod is rotatably connected with the third through hole through a bearing, and one end of the first screw rod is provided with a handle; the adjusting block comprises a first sliding block and a second sliding block which are vertically distributed, the first sliding block is positioned in the second square hole to slide, the second sliding block is positioned in the waist-shaped hole to slide, first guide holes which are symmetrically distributed are formed in the first sliding block, and the first guide holes are matched with the second guide shaft; a fourth through hole is formed in the second sliding block, an adjusting roller is rotatably connected in the fourth through hole through a bearing, and the structure of the adjusting roller is the same as that of the auxiliary transmission roller; the second sliding block is provided with first connecting blocks which are symmetrically distributed, and threaded holes are formed in the first connecting blocks; the adjusting block slides on the first screw rod through the threaded hole.
Furthermore, one end of the second screw rod main body is connected with the limiting block, the other end of the second screw rod main body penetrates through the first through hole and is connected with a second motor through a flange, and the second motor is located on the motor supporting table.
Furthermore, the first movable supporting block comprises a movable plate, a second guide hole is formed in the movable plate, and the first movable supporting block moves on the first guide shaft through the second guide hole; the first movable supporting block is matched with the first screw rod main body to rotate through the connecting hole; a second connecting block is arranged on the first movable supporting block and is positioned in the first square hole, one end of the second connecting block is fixedly connected with the first movable supporting block, and the other end of the second connecting block is fixedly connected with an L-shaped plate; the L-shaped plate is of an L-shaped structure consisting of a horizontal plate and a vertical plate, the horizontal plate is provided with a chute, and the vertical plate is provided with fifth through holes which are symmetrically distributed; the L plate is provided with a sliding plate, a sliding block is arranged below the sliding plate, and the sliding block is located in the sliding groove to slide.
Furthermore, limiting rods are symmetrically distributed on one side of the sliding plate, one end of each limiting rod is fixedly connected with the sliding plate, a first stop block is arranged at the other end of each limiting rod, the limiting rods are located in the fifth through holes to move, a first elastic piece is arranged on each limiting rod, one end of each first elastic piece acts on the corresponding first stop block, and the other end of each first elastic piece acts on the vertical plate; and a sixth through hole is formed in the sliding plate.
Furthermore, a sliding part is arranged on the sliding plate and comprises a sliding rod, and the sliding rod is positioned in the sixth through hole to move; one end of the sliding rod is provided with a second baffle, and the other end of the sliding rod is connected with a fixing plate through a bearing output; the sliding rod is provided with a supporting sleeve, the sliding rod is provided with a second elastic piece, one end of the second elastic piece acts on the sliding plate, and the other end of the second elastic piece acts in the supporting sleeve.
Further, the fixed plates are provided with fixed blocks distributed in an array manner, the fixed plates are of a circular structure, and rotating rods are distributed on the circumference of the fixed plates in an array manner; the first movable supporting block and the second movable supporting block have the same structure, and the difference is that a rotating rod is not arranged on a fixing plate on the second movable supporting block.
The invention has the beneficial effects that:
1. after the polishing equipment is clamped by the clamping device, the rotating rod is rotated, so that the kettle is rotated to polish the kettle, the production efficiency is improved, the polishing quality is ensured, and the labor intensity of workers is reduced;
2. the polishing equipment is provided with the tensioning device on the driving roller, so that the phenomenon that the abrasive belt is loosened in the using process can be adjusted, the performance of the equipment is improved, and the abrasive belt is convenient to mount and dismount.
Drawings
The invention will be further described with reference to the accompanying drawings.
FIG. 1 is a schematic view of the structure of the polishing apparatus of the present invention;
FIG. 2 is a schematic view of the structure of the polishing apparatus of the present invention;
FIG. 3 is a schematic view of the base structure of the apparatus of the present invention;
FIG. 4 is an enlarged view of the structure of FIG. 3A according to the present invention;
FIG. 5 is a schematic view of the drive roller of the present invention;
FIG. 6 is a schematic view of the tensioner of the present invention;
FIG. 7 is a schematic view of the clamping assembly of the present invention;
FIG. 8 is a schematic view of the slider configuration of the present invention;
FIG. 9 is a partial sectional view of the clamping device of the present invention.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
In the description of the present invention, it is to be understood that the terms "opening," "upper," "lower," "thickness," "top," "middle," "length," "inner," "peripheral," and the like are used in an orientation or positional relationship that is merely for convenience in describing and simplifying the description, and do not indicate or imply that the referenced component or element must have a particular orientation, be constructed and operated in a particular orientation, and thus should not be considered as limiting the present invention.
The utility model provides a polishing equipment for kettle, polishing equipment includes equipment base 1, as shown in fig. 1, fig. 2, the below of equipment base 1 is equipped with third backup pad 2, is equipped with first motor 3 in the third backup pad 2, is equipped with array distribution's driving roller 4 on the equipment base 1, and the parcel has abrasive band 5 on the driving roller 4, is equipped with the overspeed device tensioner 6 that is used for adjusting the abrasive band on the equipment base 1, is equipped with the kettle clamping device 7 of symmetric distribution on the equipment base 1.
The equipment base 1 includes an equipment platform 11, and as shown in fig. 3, support legs 12 distributed in an array are provided below the equipment platform 11.
Be equipped with the operation platform 13 of symmetric distribution on the equipment platform 11, operation platform 13 includes the first backup pad 131 of symmetric distribution, is equipped with a supporting bench 132 on the first backup pad 131, is equipped with the first square hole 133 of symmetric distribution on the supporting bench 132, and two first square holes 133 are located same straight line.
A first guide shaft 134 is disposed between the first support plates 131, a first through hole 135 is disposed on each of the first support plates 131, and a motor support 136 is disposed on one side of any one of the first support plates 131.
A second support plate 14 is arranged on the equipment platform 11 and between the operation platforms 13, a lightening hole 141 is arranged on the second support plate 14, three second through holes 142 distributed in an array are arranged on the second support plate 14, the three second through holes 142 are respectively positioned at three corners of the second support plate 14, an adjusting support 15 is arranged at the fourth corner of the second support plate 14, as shown in fig. 4, a waist-shaped hole 151 is arranged on the adjusting support 15, a second square hole 152 is arranged on the adjusting support 15, the second square hole 152 and the waist-shaped hole 151 are vertically distributed, and second guide shafts 153 symmetrically distributed are arranged in the second square hole 152.
Supporting blocks 154 are disposed at both ends of the adjusting support 15, and third through holes 155 are disposed on the supporting blocks 154.
The device platform 11 is provided with a third square hole 16 below the adjusting support 15, the device platform 11 is provided with support rods 17 distributed in an array manner below the adjusting support, the support rods 17 are provided with a third support plate 2, the third support plate 2 is provided with a first motor 3, and an output shaft of the first motor 3 is fixedly connected with a first belt pulley.
The driving roller 4 is arranged in the second through hole 142 through a bearing in a rotating manner, as shown in fig. 5, the driving roller 4 comprises a roller body 41, the roller body 41 comprises a fixed shaft 42, one end of the fixed shaft 42 is fixedly connected with the roller body 41, the other end of the fixed shaft is fixedly connected with a second belt pulley 43, the second belt pulley 43 and the first belt pulley are identical in structure, a main driving roller is arranged in the second through hole 142 below the adjusting support 15 through a bearing in a rotating manner, the second belt pulley 43 on the main driving roller is rotatably connected with the first belt pulley through a belt, an auxiliary driving roller is arranged in the remaining two second through holes 142 in a rotating manner, the auxiliary driving roller is identical in structure with the main driving roller, and the difference lies in that the second belt pulley 43 is not arranged at one end of the.
The tensioning device 6 comprises a drive rod 61 and an adjustment block 62, as shown in fig. 6.
The driving rod 61 includes a first lead screw 611, the first lead screw 611 is rotatably connected to the third through hole 155 through a bearing, and a handle 612 is disposed at one end of the first lead screw 611.
The adjusting block 62 comprises a first sliding block 621 and a second sliding block 623 which are vertically distributed, the first sliding block 621 is located in the second square hole 152 to slide, the second sliding block 623 is located in the waist-shaped hole 151 to slide, the first sliding block 621 is provided with first guide holes 622 which are symmetrically distributed, and the first guide holes 622 are matched with the second guide shaft 153.
A fourth through hole 624 is formed in the second slider 623, an adjusting roller is rotatably connected to the fourth through hole 624 through a bearing, and the structure of the adjusting roller is the same as that of the auxiliary driving roller.
First connecting blocks 625 are symmetrically distributed on the second sliding block 623, and threaded holes 626 are formed in the first connecting blocks 625.
The adjusting block 62 slides on the first lead screw 611 through the threaded hole 626.
Abrasive belt 5 is wrapped on the adjusting roller, the auxiliary driving roller and the main driving roller, and the adjusting block 62 moves on the adjusting support 15 by rotating the handle 612, so that the tensioning and loosening of the abrasive belt 5 are adjusted, and the installation of the abrasive belt is convenient.
The clamping device 7 includes a second lead screw 71, as shown in fig. 7, the second lead screw 71 is a bidirectional lead screw, a limiting block 711 is disposed on the second lead screw 71, a first lead screw main body 712 and a second lead screw main body 713 are respectively disposed at two ends of the limiting block 711, one end of the second lead screw main body 713 is connected to the limiting block 711, the other end of the second lead screw main body 713 passes through the first through hole 135 and is connected to a second motor 8 through a flange 714, and the second motor 8 is located on the motor support platform 136.
The first screw body 712 and the second screw body 713 are rotatably connected with the first movable supporting block 72 and the second movable supporting block, respectively.
The first movable supporting block 72 includes a moving plate 721, a second guiding hole 722 is formed on the moving plate 721, and the first movable supporting block 72 moves on the first guiding shaft 134 through the second guiding hole 722.
The moving plate 721 is provided with a connecting hole 723, and the first moving support block 72 is rotated in cooperation with the first screw rod body 712 through the connecting hole 723.
A second connecting block 724 is arranged on the first movable supporting block 72, the second connecting block 724 is located in the first square hole 133, one end of the second connecting block 724 is fixedly connected with the first movable supporting block 72, and the other end of the second connecting block 724 is fixedly connected with an L-shaped plate 725.
The L-shaped plate 725 is an L-shaped structure consisting of a horizontal plate 7251 and a vertical plate 7252, the horizontal plate 7251 is provided with a sliding groove 72511, and the vertical plate 7252 is provided with fifth through holes 72521 which are symmetrically distributed.
The L-plate 725 is provided with a sliding plate 73, and as shown in fig. 8, a sliding block 731 is arranged below the sliding plate 73, and the sliding block 731 is positioned in the sliding groove 72511 to slide.
One side of the sliding plate 73 is provided with symmetrically distributed limiting rods 732, one end of each limiting rod 732 is fixedly connected with the sliding plate 73, the other end of each limiting rod 732 is provided with a first stop 733, the limiting rods 732 are located in the fifth through holes 72521, the limiting rods 732 are provided with first elastic pieces 76, one ends of the first elastic pieces 76 act on the first stop 733, and the other ends of the first elastic pieces act on the vertical plates 7252.
The sliding plate 73 is provided with a sixth through hole 734.
The sliding plate 73 is provided with a sliding member 74, as shown in fig. 9, the sliding member 74 includes a sliding rod 741, and the sliding rod 741 is disposed in the sixth through hole 734 for movement.
One end of the slide rod 741 is provided with a second baffle 742, and the other end is connected with a fixing plate 77 through a bearing output.
The sliding rod 741 is provided with a supporting sleeve 743, the sliding rod 741 is provided with a second elastic member 75, one end of the second elastic member 75 acts on the sliding plate 73, and the other end acts in the supporting sleeve 743.
The fixing plate 77 is provided with fixing blocks 771 distributed in an array, the fixing plate 77 is of a circular structure, and the fixing plates 77 are provided with rotating rods 772 distributed in an array on the circumference.
The first and second movable support blocks 72 and 72 are identical in structure, except that the fixed plate 77 on the second movable support block does not have the pivot rod 772.
During the use, place the kettle between first removal supporting shoe 72 and the second removal supporting shoe, it rotates to drive second lead screw 71 through second motor 8, when making first removal supporting shoe 72 and the second remove the supporting shoe and move in opposite directions, press from both sides tightly the kettle, during first removal supporting shoe 72 and the second remove supporting shoe relative motion, loosen the kettle, press from both sides tight back to the kettle, first motor 3 drives abrasive band 5 and rotates, promote the kettle and polish with the contact of abrasive band 5, through rotating dwang 772, make the kettle rotate.
In the description herein, references to the description of "one embodiment," "an example," "a specific example" or the like are intended to mean that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the invention. In this specification, the schematic representations of the terms used above do not necessarily refer to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
The foregoing shows and describes the general principles, essential features, and advantages of the invention. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, which are described in the specification and illustrated only to illustrate the principle of the present invention, but that various changes and modifications may be made therein without departing from the spirit and scope of the present invention, which fall within the scope of the invention as claimed.

Claims (8)

1. A polishing device for a kettle comprises a device base (1), a third supporting plate (2) is arranged below the device base (1), a first motor (3) is arranged on the third supporting plate (2), driving rollers (4) distributed in an array mode are arranged on the device base (1), and abrasive belts (5) are wrapped on the driving rollers (4), and the polishing device is characterized in that a tensioning device (6) used for adjusting the abrasive belts is arranged on the device base (1), and kettle clamping devices (7) distributed symmetrically are arranged on the device base (1);
the equipment base (1) comprises an equipment platform (11), and the equipment platform (11) is provided with symmetrically distributed operating platforms (13);
the tensioning device (6) comprises a driving rod (61) and an adjusting block (62);
the driving rod (61) comprises a first screw rod (611), the first screw rod (611) is rotatably connected with the third through hole (155) through a bearing, and one end of the first screw rod (611) is provided with a handle (612); the adjusting block (62) comprises a first sliding block (621) and a second sliding block (623) which are vertically distributed, the first sliding block (621) is positioned in the second square hole (152) to slide, the second sliding block (623) is positioned in the waist-shaped hole (151) to slide, first guide holes (622) which are symmetrically distributed are formed in the first sliding block (621), and the first guide holes (622) are matched with the second guide shaft (153); a fourth through hole (624) is formed in the second sliding block (623), an adjusting roller is rotatably connected in the fourth through hole (624) through a bearing, and the structure of the adjusting roller is the same as that of the auxiliary driving roller; first connecting blocks (625) which are symmetrically distributed are arranged on the second sliding block (623), and threaded holes (626) are formed in the first connecting blocks (625); the adjusting block (62) slides on the first screw rod (611) through a threaded hole (626);
the clamping device (7) comprises a second screw rod (71), the second screw rod (71) is a bidirectional screw rod, a limiting block (711) is arranged on the second screw rod (71), and a first screw rod main body (712) and a second screw rod main body (713) are respectively arranged at two ends of the limiting block (711);
the first screw rod body (712) and the second screw rod body (713) are respectively and rotatably connected with a first movable supporting block (72) and a second movable supporting block;
a second connecting block (724) is arranged on the first movable supporting block (72), the second connecting block (724) is positioned in the first square hole (133), one end of the second connecting block (724) is fixedly connected with the first movable supporting block (72), and the other end of the second connecting block (724) is fixedly connected with an L-shaped plate (725); the L-shaped plate (725) is of an L-shaped structure consisting of a horizontal plate (7251) and a vertical plate (7252), a sliding groove (72511) is formed in the horizontal plate (7251), and fifth through holes (72521) which are symmetrically distributed are formed in the vertical plate (7252); a sliding plate (73) is arranged on the L plate (725), a sliding block (731) is arranged below the sliding plate (73), and the sliding block (731) is positioned in the sliding groove (72511) to slide;
the first movable supporting block (72) is provided with a sliding plate (73) in a sliding manner, a sliding part (74) is arranged on the sliding plate (73) in a moving manner, one end of the sliding part (74) is fixedly connected with a fixed plate (77), and rotating rods (772) are distributed on the circumference of the fixed plate (77) in an array manner;
the fixing plate (77) is provided with fixing blocks (771) distributed in an array manner, and the fixing plate (77) is of a circular structure; the first movable supporting block (72) and the second movable supporting block have the same structure, and the difference is that a rotating rod (772) is not arranged on a fixing plate (77) on the second movable supporting block.
2. A polishing device for a kettle as claimed in claim 1, wherein the device platform (11) is provided with an array of supporting feet (12), the operation platform (13) comprises a first supporting plate (131) which is symmetrically distributed, the first supporting plate (131) is provided with a supporting platform (132), and the supporting platform (132) is provided with a first square hole (133) which is symmetrically distributed; a first guide shaft (134) is arranged between the first supporting plates (131), a first through hole (135) is formed in each first supporting plate (131), and a motor supporting table (136) is arranged on one side of any one first supporting plate (131).
3. A polishing device for a kettle as claimed in claim 1, wherein a second support plate (14) is arranged on the device platform (11) and between the operation platforms (13), a lightening hole (141) is arranged on the second support plate (14), three second through holes (142) are arranged on the second support plate (14) in an array, the three second through holes (142) are respectively arranged at three corners of the second support plate (14), an adjusting support (15) is arranged at a fourth corner of the second support plate (14), a waist-shaped hole (151) is arranged on the adjusting support (15), a second square hole (152) is arranged on the adjusting support (15), the second square hole (152) and the waist-shaped hole (151) are vertically arranged, and a second guide shaft (153) is symmetrically arranged in the second square hole (152); supporting blocks (154) are arranged at two ends of the adjusting support (15), and third through holes (155) are formed in the supporting blocks (154); the device is characterized in that a third square hole (16) is formed in the lower portion of the upper adjusting support (15) of the device platform (11), supporting rods (17) distributed in an array mode are arranged below the device platform (11), a third supporting plate (2) is arranged on the supporting rods (17), a first motor (3) is arranged on the third supporting plate (2), and a first belt pulley is fixedly connected to an output shaft of the first motor (3).
4. A polishing device for kettles according to claim 3, characterized in that a driving roller (4) is rotatably arranged in the second through hole (142) via a bearing, the driving roller (4) comprises a roller body (41), the roller body (41) comprises a fixed shaft (42), one end of the fixed shaft (42) is fixedly connected with the roller body (41), the other end is fixedly connected with a second belt pulley (43), the second belt pulley (43) and the first belt pulley are of the same structure, wherein, the second through hole (142) below the adjusting support (15) rotates through a bearing to form a main driving roller, a second belt pulley (43) on the main driving roller is rotationally connected with the first belt pulley through a belt, the remaining two second through holes (142) rotate to form auxiliary driving rollers, the structures of the auxiliary driving rollers and the main driving rollers are the same, the difference is that one end of the fixed shaft (42) on the auxiliary driving roller is not provided with a second belt pulley (43).
5. The polishing apparatus for the kettle as claimed in claim 1, wherein one end of the second screw main body (713) is connected with the stopper (711), and the other end passes through the first through hole (135) and is connected with the second motor (8) through the flange (714), and the second motor (8) is located on the motor support platform (136).
6. A polishing apparatus for a water jug according to claim 1, wherein said first movable supporting block (72) includes a moving plate (721), the moving plate (721) is provided with a second guide hole (722), and the first movable supporting block (72) is moved on the first guide shaft (134) through the second guide hole (722); the moving plate (721) is provided with a connecting hole (723), and the first moving supporting block (72) is matched with the first screw rod main body (712) to rotate through the connecting hole (723).
7. A polishing device for a kettle as claimed in claim 1, wherein one side of the sliding plate (73) is provided with symmetrically distributed limit rods (732), one end of each limit rod (732) is fixedly connected with the sliding plate (73), the other end of each limit rod (732) is provided with a first stop block (733), the limit rods (732) are located in the fifth through holes (72521) to move, the limit rods (732) are provided with first elastic members (76), one end of each first elastic member (76) acts on the first stop block (733), and the other end of each first elastic member acts on the vertical plate (7252); the sliding plate (73) is provided with a sixth through hole (734).
8. A polishing device for kettles according to claim 1, characterized in that the slide plate (73) is provided with a slide member (74), the slide member (74) comprises a slide rod (741), the slide rod (741) is disposed to move in a sixth through hole (734); one end of the sliding rod (741) is provided with a second baffle (742), and the other end of the sliding rod is connected with a fixed plate (77) through a bearing output; the sliding rod (741) is provided with a supporting sleeve (743), the sliding rod (741) is provided with a second elastic part (75), one end of the second elastic part (75) acts on the sliding plate (73), and the other end of the second elastic part acts in the supporting sleeve (743).
CN201811637586.7A 2018-12-29 2018-12-29 A polishing equipment for kettle Active CN109571202B (en)

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CN113400161B (en) * 2021-08-20 2021-11-12 江苏国源特种构件有限公司 Abrasive belt grinding and polishing combined machine tool and using method thereof

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CN108655789A (en) * 2018-05-23 2018-10-16 潘林妃 A kind of medical treatment bone fracture plate fixation instrument

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US3541736A (en) * 1968-04-26 1970-11-24 Takekawa Iron Works Device for pressing a sander belt of belt sander machine
DE102011104010A1 (en) * 2011-06-10 2012-12-13 Gerd Eisenblätter Gmbh Belt grinding device for grinding hollow profiled pipe, has two deflection elements spaced apart from each other, moveably coupled with each other by coupling element, and moveable with respect to other deflecting element
CN204277705U (en) * 2014-10-30 2015-04-22 陈冲 A kind of large-scale semi-automatic pot body weld seam belt sander
CN205765505U (en) * 2016-07-15 2016-12-07 中山市华拓电子设备有限公司 The outer buffing machine of the full-automatic kettle of a kind of band mechanical hand function
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